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Deficiency in DGCR8-dependent canonical microRNAs causes infertility due to multiple abnormalities during uterine development in mice

Authors
 Yeon Sun Kim  ;  Hye-Ryun Kim  ;  Hyongbum Kim  ;  Seung Chel Yang  ;  Mira Park  ;  Jung Ah Yoon  ;  Hyunjung J. Lim  ;  Seok-Ho Hong  ;  Francesco J. DeMayo  ;  John P. Lydon  ;  Youngsok Choi  ;  Dong Ryul Lee  ;  Haengseok Song 
Citation
 SCIENTIFIC REPORTS, Vol.6 : 20242, 2016 
Journal Title
SCIENTIFIC REPORTS
Issue Date
2016
MeSH
Abnormalities, Multiple/genetics* ; Abnormalities, Multiple/metabolism ; Animals ; Cell Proliferation ; Corpus Luteum ; Disease Models, Animal ; Estrous Cycle/genetics ; Female ; Gene Expression Regulation ; Gonadal Steroid Hormones/metabolism ; Infertility/genetics* ; Infertility/metabolism ; Mice ; MicroRNAs/genetics* ; Oocytes/metabolism ; Organ Specificity/genetics ; Organogenesis/genetics ; Pregnancy ; RNA-Binding Proteins/genetics* ; RNA-Binding Proteins/metabolism ; Stromal Cells/metabolism ; Urogenital Abnormalities/genetics* ; Urogenital Abnormalities/metabolism ; Uterus/abnormalities* ; Uterus/metabolism
Abstract
DGCR8 is an RNA-binding protein that interacts with DROSHA to produce pre-microRNA in the nucleus, while DICER generates not only mature microRNA, but also endogenous small interfering RNAs in the cytoplasm. Here, we produced Dgcr8 conditional knock-out mice using progesterone receptor (PR)-Cre (Dgcr8(d/d)) and demonstrated that canonical microRNAs dependent on the DROSHA-DGCR8 complex are required for uterine development as well as female fertility in mice. Adult Dgcr8(d/d) females neither underwent regular reproductive cycles nor produced pups, whereas administration of exogenous gonadotropins induced normal ovulation in these mice. Interestingly, immune cells associated with acute inflammation aberrantly infiltrated into reproductive organs of pregnant Dgcr8(d/d) mice. Regarding uterine development, multiple uterine abnormalities were noticeable at 4 weeks of age when PR is significantly increased, and the severity of these deformities increased over time. Gland formation and myometrial layers were significantly reduced, and the stromal cell compartment did not expand and became atrophic during uterine development in these mice. These results were consistent with aberrantly reduced stromal cell proliferation and completely failed decidualization. Collectively, we suggest that DGCR8-dependent canonical microRNAs are essential for uterine development and physiological processes such as proper immune modulation, reproductive cycle, and steroid hormone responsiveness in mice.
Files in This Item:
T201600320.pdf Download
DOI
10.1038/srep20242
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Pharmacology (약리학교실) > 1. Journal Papers
Yonsei Authors
Kim, Hyongbum(김형범) ORCID logo https://orcid.org/0000-0002-4693-738X
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/146370
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